Effects of Multi-Walled Carbon Nanotubes and Nano-Silica on Root Development, Leaf Photosynthesis, Active Oxygen and Nitrogen Metabolism in Maize

Author:

Hao Yubo1,Yu Yang1,Sun Guangyan2,Gong Xiujie1,Jiang Yubo1,Lv Guoyi1,Zhang Yiteng1,Li Liang1,Zhao Yang1,Sun Dan3,Gu Wanrong2,Qian Chunrong1

Affiliation:

1. Institute of Crop Cultivation and Tillage, Heilongjiang Academy of Agricultural Sciences, Harbin 150028, China

2. College of Agriculture, Northeast Agricultural University, Harbin 150030, China

3. Institute of Crop Resource, Heilongjiang Academy of Agricultural Sciences, Harbin 150086, China

Abstract

Carbon nanotubes (MWCNTs) and nano-silica (nano-SiO2) are widely used in the field of life science because of their special physical and chemical properties. In this study, the effects of different concentrations of MWCNTs (0 mg·L−1, 200 mg·L−1, 400 mg·L−1, 800 mg·L−1 and 1200 mg·L−1) and nano-SiO2 (0 mg·L−1, 150 mg·L−1, 800 mg·L−1, 1500 mg·L−1 and 2500 mg·L−1) on maize seedling growth and relative mechanisms were explored. The main results are as follows: MWCNTs and nano-SiO2 can promote the growth of maize seedlings, and promote plant height, root length, the dry and fresh weight of seedlings, root–shoot ratio and so on. The ability to accumulate dry matter increased, the relative water content of leaves increased, the electrical conductivity of leaves decreased, the stability of cell membranes improved and the water metabolism ability of maize seedlings increased. The treatment of MWCNTs with 800 mg·L−1 and nano-SiO2 with 1500 mg·L−1 had the best effect on seedling growth. MWCNTs and nano-SiO2 can promote the development of root morphology, increase root length, root surface area, average diameter, root volume and total root tip number and improve root activity, so as to improve the absorption capacity of roots to water and nutrition. After MWCNT and nano-SiO2 treatment, compared with the control, the contents of O2·− and H2O2 decreased, and the damage of reactive oxygen free radicals to cells decreased. MWCNTs and nano-SiO2 can promote the clearance of reactive oxygen species and maintain the complete structure of cells, so as to slow down plant aging. The promoting effect of MWCNTs treated with 800 mg·L−1 and nano-SiO2 treated with 1500 mg·L−1 had the best effect. After treatment with MWCNTs and nano-SiO2, the activities of key photosynthesis enzymes PEPC, Rubisco, NADP-ME, NADP-MDH and PPDK of maize seedlings increased, which promoted the opening of stomata, improved the fixation efficiency of CO2, improved the photosynthetic process of maize plants and promoted plant growth. The promoting effect was the best when the concentration of MWCNTs was 800 mg·L−1 and the concentration of nano-SiO2 was 1500 mg·L−1. MWCNTs and nano-SiO2 can increase the activities of the enzymes GS, GOGAT, GAD and GDH related to nitrogen metabolism in maize leaves and roots, and can increase the content of pyruvate, so as to promote the synthesis of carbohydrates and the utilization of nitrogen and promote plant growth.

Funder

Young Scientist Training Project of Heilongjiang Academy of Agricultural Sciences

Youth Project of the National Natural Science Foundation

Key Project of the Natural Science Foundation of Heilongjiang Province

Strategic Priority Research Program of the Chinese Academy of Sciences

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference107 articles.

1. High-yield irrigated maize in the Western U.S. Corn Belt: I. On-farm yield, yield potential, and impact of agronomic practices;Grassini;Field Crops Res.,2011

2. Progress of the development of nanophase materials;Yuan;J. Guangdong Non-Ferr. Met.,1998

3. Nano-TiO2 Improve the Photosynthesis of Tomato Leaves under Mild Heat Stress;Qi;Biol. Trace Elem. Res.,2013

4. Rose, P., Bhat, M., Vidhani, K., Gole, A., and Ghaisas, S. (2011, January 15–18). Intelligent Informatics Platform for Nano-Agriculture. Proceedings of the 11th IEEE International Conference on Nanotechnology, Portland, OR, USA.

5. (Invited) High Aspect Ratio Nanomaterials Enable Biomolecule Delivery and Transgene Expression or Silencing in Mature Plants;Demirer;bioRxiv,2018

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